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用于选择性快速检测导致宫颈癌的人乳头瘤病毒的氮掺杂碳点

Nitrogen-Doped Carbon Dots for Selective and Rapid Gene Detection of Human Papillomavirus Causing Cervical Cancer.

作者信息

Pareek Sakshi, Rout Vishwadeep, Jain Utkarsh, Bharadwaj Mausumi, Chauhan Nidhi

机构信息

Amity Institute of Nanotechnology, Amity University Uttar Pradesh, Noida 201313, India.

Amity Institute of Biotechnology, Amity University Uttar Pradesh, Noida 201313, India.

出版信息

ACS Omega. 2021 Nov 10;6(46):31037-31045. doi: 10.1021/acsomega.1c03919. eCollection 2021 Nov 23.

Abstract

According to WHO, cervical cancer is considered as one of the most frequently diagnosed cancers and the fourth main source of cancer death in women in 2020 worldwide. Hence, there is a need for development of cervical cancer screening with new rapid and cost-effective methods. Although there are few methods available for HPV identification, these techniques are less sensitive, time-consuming, and costly. An ultra-sensitive, selective, and label-free DNA-based impedimetric electrochemical genosensor is developed in this study to detect HPV-18 for cervical cancer. Electrochemical analysis was performed for the characterization of the sensing platform and for the detection of analyte. A single-stranded 25mer oligonucleotide DNA probe was immobilized onto a nitrogen-doped carbon nanodot-modified ITO electrode. Furthermore, the hybridization event was measured by testing the complementary single stranded DNA sequence in the samples. The sensor could distinguish between complementary as well as non-complementary sequences. Herein, impedance quantification demonstrated a limit of detection of 0.405 fM. The developed genosensor showed high selectivity toward HPV-18 in the clinical samples. This sensing platform can be considered as a rapid and selective method for the screening of HPV-18.

摘要

据世界卫生组织称,宫颈癌被认为是最常被诊断出的癌症之一,也是2020年全球女性癌症死亡的第四大主要原因。因此,需要开发新的快速且经济高效的宫颈癌筛查方法。尽管有一些可用于检测人乳头瘤病毒(HPV)的方法,但这些技术灵敏度较低、耗时且成本高昂。本研究开发了一种超灵敏、选择性好且无标记的基于DNA的阻抗型电化学基因传感器,用于检测宫颈癌相关的HPV-18。进行了电化学分析以表征传感平台并检测分析物。将一条25个碱基的单链寡核苷酸DNA探针固定在氮掺杂碳纳米点修饰的ITO电极上。此外,通过检测样品中的互补单链DNA序列来测量杂交事件。该传感器能够区分互补序列和非互补序列。在此,阻抗定量显示检测限为0.405飞摩尔。所开发的基因传感器在临床样本中对HPV-18表现出高选择性。这种传感平台可被视为一种快速且选择性的HPV-18筛查方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31f8/8613818/2324b44ea0f7/ao1c03919_0005.jpg

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